Turku Centre for Biotechnology, University of Turku and Abo Akademi University, Finland.
Biochem Biophys Res Commun. 2010 Jul 30;398(3):361-5. doi: 10.1016/j.bbrc.2010.06.071. Epub 2010 Jun 19.
Dps proteins contain a ferroxidase site that binds and oxidizes iron, thereby preventing hydroxyl radical formation by Fenton reaction. Although the involvement of a di-iron ferroxidase site has been suggested, X-ray crystal structures of various Dps members have shown either one or two iron cations with various occupancies despite the high structural conservation of the site. Similarly, structural studies with zinc, a redox-stable replacement for iron, have shown the binding of either one or two zinc ions. Here, the crystal structure of Streptococcus pyogenes Dpr in complex with zinc reveals the binding of two zinc cations in the ferroxidase center and an additional zinc-binding site at the surface of the protein. The results suggest a structural basis for the protection of Streptococcus pyogenes in zinc stress conditions and provide a clear evidence for a di-zinc and di-iron ferroxidase site in Streptococcus pyogenes Dpr protein.
Dps 蛋白含有一个亚铁氧化酶位点,该位点能结合并氧化铁,从而防止 Fenton 反应生成羟基自由基。尽管有人提出了二价铁亚铁氧化酶位点的参与,但各种 Dps 成员的 X 射线晶体结构显示,尽管该位点具有高度的结构保守性,但只有一个或两个铁阳离子具有不同的占有率。同样,使用锌(一种氧化还原稳定的铁替代品)进行的结构研究表明,该位点可以结合一个或两个锌离子。在这里,与锌结合的化脓性链球菌 Dpr 的晶体结构揭示了亚铁氧化酶中心结合了两个锌离子,以及蛋白质表面的另一个锌结合位点。研究结果为化脓性链球菌在锌胁迫条件下的保护提供了结构基础,并为化脓性链球菌 Dpr 蛋白中的双锌和双铁亚铁氧化酶位点提供了明确的证据。